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首页> 外文期刊>Journal of the American Water Resources Association >PHYSICAL AND CHEMICAL CONNECTIVITY OF STREAMS AND RIPARIAN WETLANDS TO DOWNSTREAM WATERS: A SYNTHESIS
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PHYSICAL AND CHEMICAL CONNECTIVITY OF STREAMS AND RIPARIAN WETLANDS TO DOWNSTREAM WATERS: A SYNTHESIS

机译:河流和日本湿地与下游水域的物理和化学连通性:综合

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摘要

Streams, riparian areas, floodplains, alluvial aquifers, and downstream waters (e.g., large rivers, lakes, and oceans) are interconnected by longitudinal, lateral, and vertical fluxes of water, other materials, and energy. Collectively, these interconnected waters are called fluvial hydrosystems. Physical and chemical connectivity within fluvial hydrosystems is created by the transport of nonliving materials (e.g., water, sediment, nutrients, and contaminants) which either do or do not chemically change (chemical and physical connections, respectively). A substantial body of evidence unequivocally demonstrates physical and chemical connectivity between streams and riparian wetlands and downstream waters. Streams and riparian wetlands are structurally connected to downstream waters through the network of continuous channels and floodplain form that make these systems physically contiguous, and the very existence of these structures provides strong geomorphologic evidence for connectivity. Functional connections between streams and riparian wetlands and their downstream waters vary geographically and over time, based on proximity, relative size, environmental setting, material disparity, and intervening units. Because of the complexity and dynamic nature of connections among fluvial hydrosystem units, a complete accounting of the physical and chemical connections and their consequences to downstream waters should aggregate over multiple years to decades.
机译:溪流,河岸地区,洪泛区,冲积含水层和下游水域(例如,大河流,湖泊和海洋)通过水,其他物质和能量的纵向,横向和垂直通量相互连接。这些相互联系的水统称为河流水系。河流水系内的物理和化学连通性是通过非生命物质(例如水,沉积物,营养物和污染物)的运输而建立的,这些物质要么发生化学变化,要么没有发生化学变化(分别是化学和物理连接)。大量证据清楚地表明了河流与河岸湿地和下游水域之间的物理和化学联系。河流和河岸湿地通过连续渠道网络和洪泛平原形式在结构上与下游水域相连,使这些系统在物理上是连续的,这些结构的存在为连通性提供了强有力的地貌证据。溪流与河岸湿地及其下游水域之间的功能联系会根据距离,相对大小,环境设置,物质差异和居间单位而在地理位置和时间上有所变化。由于河流水系单元之间连接的复杂性和动态性质,对物理和化学连接及其对下游水域的影响的完整描述应在数年至数十年的时间内汇总起来。

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